© 2015 The Association for Research in Vision and Ophthalmology, Inc. PURPOSE. The purpose of this study was to compare the optical performance of diffractive multifocal intraocular lenses (DMIOLs) with visible (VIS) illumination with that of near infrared (NIR) illumination, the latter being used to test pseudophakic eyes in clinical aberrometers and double-pass systems. METHODS. Two DMIOLs of different design (Tecnis +2.75 D ZKB00 and AcrySof +2.5 D SV25T0) were tested in vitro in a model eye under both VIS (¿ 530 nm) and NIR (¿ 780 nm) illumination, and variations in the add power of the lenses were determined. Moreover, for the two wavelengths, the energy efficiency and modulation transfer function at the DMIOLs’ far and near foci were...
PURPOSE: To experimentally compare the optical performance of three types of hydrophobic intraocula...
Purpose. To compare the through-focus visual performance in a clinical population of pseudophakic pa...
The light distribution among the far, intermediate and near foci of a new trifocal intraocular lens ...
© 2015 The Association for Research in Vision and Ophthalmology, Inc. PURPOSE. The purpose of this s...
Purpose To describe the optical performances of 3 types of diffractive hydrophobic intraocular lens...
Purpose: To test the performance of a new monofocal intraocular lens, intended to extend depth of fo...
PURPOSE. The study evaluated—theoretically and experimentally—the longitudinal chromatic aberration ...
Purpose: To describe the optical performance of 3 types (monofocal, bifocal and trifocal) of diff...
PURPOSE. To compare, as a function of pupil size, the through-focus performance and halo features of...
PURPOSE. The study evaluated—theoretically and experimentally—the longitudinal chromatic aberration ...
To compare the visual performance of multifocal intraocular lenses (IOLs) and monofocal IOLs made of...
PURPOSE. To compare, as a function of pupil size, the through-focus performance and halo features o...
Background This study aims to detect alterations in the spatio-chromatic pseudophakic vision produce...
Purpose: To experimentally compare the optical performance of three types of hydrophobic intraocu...
Most of the new premium models of intraocular lenses for presbyopia correction use diffractive optic...
PURPOSE: To experimentally compare the optical performance of three types of hydrophobic intraocula...
Purpose. To compare the through-focus visual performance in a clinical population of pseudophakic pa...
The light distribution among the far, intermediate and near foci of a new trifocal intraocular lens ...
© 2015 The Association for Research in Vision and Ophthalmology, Inc. PURPOSE. The purpose of this s...
Purpose To describe the optical performances of 3 types of diffractive hydrophobic intraocular lens...
Purpose: To test the performance of a new monofocal intraocular lens, intended to extend depth of fo...
PURPOSE. The study evaluated—theoretically and experimentally—the longitudinal chromatic aberration ...
Purpose: To describe the optical performance of 3 types (monofocal, bifocal and trifocal) of diff...
PURPOSE. To compare, as a function of pupil size, the through-focus performance and halo features of...
PURPOSE. The study evaluated—theoretically and experimentally—the longitudinal chromatic aberration ...
To compare the visual performance of multifocal intraocular lenses (IOLs) and monofocal IOLs made of...
PURPOSE. To compare, as a function of pupil size, the through-focus performance and halo features o...
Background This study aims to detect alterations in the spatio-chromatic pseudophakic vision produce...
Purpose: To experimentally compare the optical performance of three types of hydrophobic intraocu...
Most of the new premium models of intraocular lenses for presbyopia correction use diffractive optic...
PURPOSE: To experimentally compare the optical performance of three types of hydrophobic intraocula...
Purpose. To compare the through-focus visual performance in a clinical population of pseudophakic pa...
The light distribution among the far, intermediate and near foci of a new trifocal intraocular lens ...